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Blood Velocity Estimation Feasibility Using High Resolution Time-resolved MR Sequences

机译:使用高分辨率时间分辨MR序列的血液速度估计可行性

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Blood velocity quantification is a challenge for vascular flow observation and arterial pathogenesis comprehension. In this context, magnetic resonance dynamic sequences could be used for spatial velocity encoding. On one hand, phase contrast techniques use spins phase modification for velocity information extraction. On the other hand, time of flight (TOF) technique has a high temporal resolution, but it is still considered a vascular visualization technique. The aim of this study is to check feasibility to estimate blood velocity from gradient echo TOF-based images. This is advantageous as high temporal resolution (<10 ms) has the potential to produce more precise exploration of vessel, and blood movements. This work represents an experimental analysis of MR signal behavior as a function of velocity, in fast gradient echo TOF-based sequence. The study of this relationship's shape is necessary for later velocity quantification methods design. MR signal behavior is studied for a full scale of velocity, and reproducibility is checked. Imaging parameters influence is also reported. High temporal resolution, blood velocity estimation feasibility are finally discussed.
机译:血液速度量化是血管流动观察和动脉发病机制理解的挑战。在这种情况下,磁共振动态序列可用于空间速度编码。一方面,相位对比度技术使用Spins相位修改进行速度信息提取。另一方面,飞行时间(TOF)技术具有高的时间分辨率,但仍然认为血管可视化技术。本研究的目的是检查可行性以估计基于梯度回波TOF图像的血液速度。这是有利的,因为高时分辨率(<10ms)具有产生更精确的血管和血液运动的可能性。该工作代表了在快速梯度回波TOF基序列中作为速度函数的MR信号行为的实验分析。这种关系形状的研究是后来的速度量化方法设计所必需的。研究了MR信号行为以获得全规模的速度,并检查再现性。还报道了成像参数影响。最终讨论了高颞率,血液速度估计可行性。

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